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Compact high-[formula omitted] Slot Loaded Dielectric Resonator Filtering Antenna for LoRa applications.

Authors :
Allabouche, Kaoutar
Fabien, Ferrero
Ribero, Jean-Marc
Mohammed, Jorio
Najiba, EL Amrani El Idrissi
Lizzi, Leonardo
Source :
AEU: International Journal of Electronics & Communications. Feb2024, Vol. 175, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

High- Q antennas are highly sought after for their narrow bandwidth and compact size, enabling them to occupy minimal volume in a given structure. In this paper, we present a new ultra-narrow band filter/antenna designed for LoRa applications. The filter/antenna consists of an elliptical slot loaded with a high permittivity rectangular dielectric resonator, excited by a coupled microstrip line. The proposed antenna serves not only as a radiating element but also as a filter, offering the significant benefit of eliminating loss between the filter and the antenna. To assess the influence of the SMA power cable on miniature antennas, we conducted a comparison of the antenna with and without a radio frequency (RF) module, focusing on radiation pattern. Our proposed filter/antenna provides a compact profile of 25 × 40 mm 2 (λ / 13 × λ /8), an omnidirectional radiation pattern, and remarkable rejection in the stop-band. The validity of the proposed design is accomplished by comparing the electromagnetic simulation with fabrication and measurement results, achieving a high level of agreement between simulation and measurement. Thanks to its exceptional performance, small size, low cost, and low-power characteristics, this innovative structure is suitable for IoT applications at UHF band with a stop-band outside this frequency to avoid potential interference from adjacent bands. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14348411
Volume :
175
Database :
Academic Search Index
Journal :
AEU: International Journal of Electronics & Communications
Publication Type :
Academic Journal
Accession number :
174841834
Full Text :
https://doi.org/10.1016/j.aeue.2023.155078